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首页> 外文期刊>Amyotrophic lateral sclerosis eofficial publication of the World Federation of Neurology Research Group on Motor Neuron Diseases >Neuroanatomical patterns of cerebral white matter involvement in different motor neuron diseases as studied by diffusion tensor imaging analysis
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Neuroanatomical patterns of cerebral white matter involvement in different motor neuron diseases as studied by diffusion tensor imaging analysis

机译:扩散张量成像分析研究脑白质在不同运动神经元疾病中的神经解剖形态

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摘要

This study was designed to investigate differences of white matter (WM) involvement patterns in various motor neuron disorders (MND) by use of diffusion tensor imaging (DTI).DTI was acquired in ALS (n = 20), primary lateral sclerosis (n = 20), pure hereditary spastic paraparesis (HSP) (n = 20), and complicated HSP (n = 12). The data analysis was performed by voxelwise comparison of fractional anisotropy (FA) maps at group level together with fibre tracking in regions of interest (ROI) accompanied by tractwise fractional anisotropy statistics. DTI analysis revealed widespread patterns of alterations with a predominant deterioration of the motor system. These alterations encompassed, as the key structures, not only the corticospinal tracts (CST) but also distinct areas of the corpus callosum (CC), in particular its motor segment III. In conclusion, whole brain-based and tract-based DTI analysis was able to define a distinct WM pathoanatomy of different MND. These results may serve as an additional guidance in the identification of MRI-based parameters by showing a consistent CST and CC involvement, with differences in the extent of pathology, across a range of clinically different disorders. For potential future developments in MRI diagnostics in MND, a (perhaps multiparametric) ROI-based approach should include CST and the CC motor segment
机译:本研究旨在通过扩散张量成像(DTI)研究各种运动神经元疾病(MND)中白质(WM)参与模式的差异.DTI是在ALS(n = 20),原发性侧索硬化(n = 20),单纯遗传性痉挛性轻瘫(n = 20)和复杂性HSP(n = 12)。通过组水平的分数各向异性(FA)映射的体素比较,以及感兴趣区域(ROI)中的纤维跟踪以及逐段分数各向异性统计,进行了数据分析。 DTI分析揭示了变化的广泛模式,其中电机系统显着恶化。这些改变不仅包括皮质脊髓束(CST)作为关键结构,还包括call体(CC)的不同区域,特别是其运动节段III。总之,基于全脑和基于道的DTI分析能够定义不同MND的独特WM病理解剖。这些结果可显示一系列临床不同疾病中一致的CST和CC参与,病理学程度差异,从而为基于MRI的参数识别提供补充指导。对于MND中MRI诊断的潜在未来发展,(可能是多参数)基于ROI的方法应包括CST和CC运动段

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